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Software Architecture with C# 9 and .NET 5

You're reading from   Software Architecture with C# 9 and .NET 5 Architecting software solutions using microservices, DevOps, and design patterns for Azure

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Product type Paperback
Published in Dec 2020
Publisher Packt
ISBN-13 9781800566040
Length 700 pages
Edition 2nd Edition
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Authors (2):
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Gabriel Baptista Gabriel Baptista
Author Profile Icon Gabriel Baptista
Gabriel Baptista
Francesco Abbruzzese Francesco Abbruzzese
Author Profile Icon Francesco Abbruzzese
Francesco Abbruzzese
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Table of Contents (26) Chapters Close

Preface 1. Understanding the Importance of Software Architecture 2. Non-Functional Requirements FREE CHAPTER 3. Documenting Requirements with Azure DevOps 4. Deciding the Best Cloud-Based Solution 5. Applying a Microservice Architecture to Your Enterprise Application 6. Azure Service Fabric 7. Azure Kubernetes Service 8. Interacting with Data in C# – Entity Framework Core 9. How to Choose Your Data Storage in the Cloud 10. Working with Azure Functions 11. Design Patterns and .NET 5 Implementation 12. Understanding the Different Domains in Software Solutions 13. Implementing Code Reusability in C# 9 14. Applying Service-Oriented Architectures with .NET Core 15. Presenting ASP.NET Core MVC 16. Blazor WebAssembly 17. Best Practices in Coding C# 9 18. Testing Your Code with Unit Test Cases and TDD 19. Using Tools to Write Better Code 20. Understanding DevOps Principles 21. Challenges of Applying CI Scenarios 22. Automation for Functional Tests 23. Answers 24. Another Book You May Enjoy
25. Index

SOAP web services

The Simple Object Access Protocol (SOAP) allows both one-way messages and answer/response messages. Communication can be both synchronous and asynchronous, but, if the underlying protocol is synchronous, such as in the case of HTTP, the sender receives an acknowledgment saying that the message was received (but not necessarily processed). When asynchronous communication is used, the sender must listen for incoming communications. Often, asynchronous communication is implemented with the Publisher/Subscriber pattern that we described in Chapter 11, Design Patterns and .NET 5 Implementation.

Messages are represented as XML documents called envelopes. Each envelope contains a header, a body, and a fault element. The body is where the actual content of the message is placed. The fault element contains possible errors, so it is the way exceptions are exchanged when communication occurs. Finally, the header contains any auxiliary information that enriches the protocol...

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